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GB/T 26328-2010 English PDF

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GB/T 26328-2010: Optical interference filters for biochemical analyzer
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PDF similar to GB/T 26328-2010


Standard similar to GB/T 26328-2010

GB/T 22062   GB/T 4315.1   GB/T 4315.2   GB/T 26332.1   GB/T 26332.6   GB/T 26332.5   

Basic data

Standard ID GB/T 26328-2010 (GB/T26328-2010)
Description (Translated English) Optical interference filters for biochemical analyzer
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard N30
Classification of International Standard 17.180
Word Count Estimation 13,133
Date of Issue 2011-01-14
Date of Implementation 2011-06-01
Quoted Standard GB/T 1185-2006; GB/T 2828.1-2003; GB/T 2829-2002; GB/T 13384-2008; GB/T 26332.1-2010; ISO 9022-2-2002
Regulation (derived from) National Standard Approval Announcement 2011 No.106
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary This standard specifies the biochemical analytical instruments (such as biochemistry analyzer, microplate reader) with interference filters and optical film (hereinafter referred to as " filters ") requirements, test methods, inspection rules, signs, packaging, transport and storage. This standard applies to the design and manufacture based on the principle of optical interference filters for biochemical analysis instrument.

GB/T 26328-2010: Optical interference filters for biochemical analyzer

---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Optical interference filters for biochemical analyzer ICS 17.180 N30 National Standards of People's Republic of China Biochemical analytical instruments with interference filters Issued on. 2011-01-14 2011-06-01 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China released

Table of Contents

Introduction Ⅲ 1 Scope 1 2 Normative references 1 3 Terms and definitions 4 2 Technical Requirements 4.1 Optical Properties of 2 4.2 2 surface flaws 4.3 Environmental Adaptability 2 5 Test Method 2 5.1 Optical Properties of 2 5.2 3 surface flaws 5.3 Environmental Adaptability 3 6 Inspection rules 5 6.1 Inspection classification 5 6.2 factory inspection 5 6.3 Type inspection 5 7 signs, packaging, transportation and storage 6 7.1 marks 6 7.2 Packaging 6 7.3 Transport 6 7.4 Storage 6 Appendix A (informative) several typical bandpass filter spectrum diagram 7 Annex B (informative) than the conventional method of detecting means 9

Foreword

The Standard Appendix A, Appendix B is an informative annex. This standard is proposed and managed by China Machinery Industry Federation. This standard was drafted. Shenyang Academy of Instrumentation Science, Shenyang Bo Optical Technology Co., Ltd., Shenzhen Mindray Bio-Medical Electronics Co., Ltd., National Instruments Component Quality Supervision and Inspection Center. The main drafters of this standard. Yin Xiaojun, Zhao Shuai Feng Fei books States Wuzeng Hui, Ren Shaopeng, Wang Wei, Qiu Jinhong, Xuqiu Ling, Du Jian. Biochemical analytical instruments with interference filters

1 Scope

This standard specifies the biochemical analytical instruments (such as biochemical analyzer, microplate reader) with interference filters and optical film (hereinafter referred to as "filter Rays ") requirements for test methods ﹑ ﹑ inspection rules, marking, packaging, transportation and storage. This standard applies to the design and manufacture based on principles of optical interference filters used in biochemical analytical instruments.

2 Normative references

The following documents contain provisions which, through reference in this standard and become the standard terms. For dated references, subsequent Amendments (not including errata content) or revisions do not apply to this standard, however, encourage the parties to the agreement are based on research Whether the latest versions of these documents. For undated reference documents, the latest versions apply to this standard. GB/T 1185-2006 optical components surface flaws (ISO 10110-7.1996, NEQ) GB/T 2828.1-2003 Sampling procedures for inspection - Part 1. by acceptance quality limit (AQL) retrieval batch test sample Programme (ISO 2859-1.1999, IDT) GB/T 2829-2002 periodic inspection Sampling procedures and tables (suitable for process stability test) GB/T 13384-2008 mechanical and electrical products packaging General technical conditions GB/T 26332.1-2010 optical film and optical instruments - Part 1. Definitions (ISO 9211-1.1994, IDT) ISO 9022-2.2002 Opticsandopticalinstruments-Environmentaltestmethods-Part 2. Cold, heatandhumidity

3 Terms and Definitions

GB/T 26332.1-2010 and established the following terms and definitions apply to this standard. 3.1 The peak transmission rate peaktransmittance The maximum spectral transmittance in the spectral filter passband region. Represented by Tmax, it can also be used Tpk represented (see Appendix A). 3.2 Peak wavelength peakwavelength The peak transmission rate corresponding to the wavelength value. With λmax represents (see Appendix A). 3.3 Half width fulwidthathalfmaximum Filter peak transmission rate (Tmax) spectral width at half corresponds to. Characterization filter passband spectral width, with Δλ0.5 expressed. Let transmittance at 0.5Tmax at the corresponding values \u200b\u200bfor the two wavelengths λ1 and λ2 (λ1 < λ2), the half-width Δλ0.5 = λ2-λ1, respectively (see Appendix A). 3.4 Center wavelength centerwavelength Value wavelength band pass filter center. Characterization filter passband spectral position, represented by λ0. Transmittance was numerically equal to the value of the two wavelengths λ1 and λ2 corresponding to the average of at 0.5Tmax, calculated as λ0 = (λ1 λ2)/2 (See Appendix A). 3.5 Background of blocking off Cutoff level cutoff filter in the spectral region with light, with the spectral transmittance T (λ) or optical density OD (λ), said Jane

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